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Preload and Calcium Handling in Muscular Dystrophy

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Manage episode 386412105 series 3479554
Kandungan disediakan oleh American Physiological Society. Semua kandungan podcast termasuk episod, grafik dan perihalan podcast dimuat naik dan disediakan terus oleh American Physiological Society atau rakan kongsi platform podcast mereka. Jika anda percaya seseorang menggunakan karya berhak cipta anda tanpa kebenaran anda, anda boleh mengikuti proses yang digariskan di sini https://ms.player.fm/legal.

What does a mouse heart have to do with an M&M candy (the regular kind, not the peanut variety)? In our latest episode, Associate Editor Dr. Crystal Ripplinger (University of California, Davis) interviews author Dr. Tim Domeier (University of Missouri) and expert Dr. DeWayne Townsend (University of Minnesota) about the recent study by Haffner et al et al. The authors examined cardiac calcium mishandling and damage in the setting of Duchenne muscular dystrophy (DMD). Using a genetic mouse model of DMD crossed with a mouse that expresses a genetically encoded calcium indicator, Domeier and colleagues investigated changes in intracellular calcium handling in response to increased preload. The unexpected finding was that after the acute preload challenge, many of the cells were missing-in-action. What was going on with these missing cells? Listen as we talk about how individual dystrophic cells blow up if stretched too far, and why pointing microscopes in different directions might be the next step to overcome optical imaging challenges. Don’t miss this episode – the enthusiasm for science, tiny pumping mouse hearts, and squishy cells is contagious!

Vivian Haffner, Zahra Nourian, Erika M. Boerman, Michelle D. Lambert, Laurin M. Hanft, Maike Krenz, Christopher P. Baines, Dongsheng Duan, Kerry S. McDonald, Timothy L. Domeier Calcium handling dysfunction and cardiac damage following acute ventricular preload challenge in the dystrophin-deficient mouse heart Am J Physiol Heart Circ Physiol, published October 18, 2023. DOI: 10.1152/ajpheart.00265.2023

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20 episod

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iconKongsi
 
Manage episode 386412105 series 3479554
Kandungan disediakan oleh American Physiological Society. Semua kandungan podcast termasuk episod, grafik dan perihalan podcast dimuat naik dan disediakan terus oleh American Physiological Society atau rakan kongsi platform podcast mereka. Jika anda percaya seseorang menggunakan karya berhak cipta anda tanpa kebenaran anda, anda boleh mengikuti proses yang digariskan di sini https://ms.player.fm/legal.

What does a mouse heart have to do with an M&M candy (the regular kind, not the peanut variety)? In our latest episode, Associate Editor Dr. Crystal Ripplinger (University of California, Davis) interviews author Dr. Tim Domeier (University of Missouri) and expert Dr. DeWayne Townsend (University of Minnesota) about the recent study by Haffner et al et al. The authors examined cardiac calcium mishandling and damage in the setting of Duchenne muscular dystrophy (DMD). Using a genetic mouse model of DMD crossed with a mouse that expresses a genetically encoded calcium indicator, Domeier and colleagues investigated changes in intracellular calcium handling in response to increased preload. The unexpected finding was that after the acute preload challenge, many of the cells were missing-in-action. What was going on with these missing cells? Listen as we talk about how individual dystrophic cells blow up if stretched too far, and why pointing microscopes in different directions might be the next step to overcome optical imaging challenges. Don’t miss this episode – the enthusiasm for science, tiny pumping mouse hearts, and squishy cells is contagious!

Vivian Haffner, Zahra Nourian, Erika M. Boerman, Michelle D. Lambert, Laurin M. Hanft, Maike Krenz, Christopher P. Baines, Dongsheng Duan, Kerry S. McDonald, Timothy L. Domeier Calcium handling dysfunction and cardiac damage following acute ventricular preload challenge in the dystrophin-deficient mouse heart Am J Physiol Heart Circ Physiol, published October 18, 2023. DOI: 10.1152/ajpheart.00265.2023

  continue reading

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